Browse Publications Technical Papers 2009-01-0910
2009-04-20

Evaluation of SCR Catalyst Technology on Diesel Particulate Filters 2009-01-0910

Selective Catalytic Reduction (SCR) catalysts have been demonstrated as effective for controlling NOx emissions from diesel engines, maintaining high NOx conversion even after the extended high temperature exposure encountered in systems with active filter regenerations. As future diesel emission regulations are expected to be further reduced, packaging a large volume of SCR catalysts in diesel exhaust systems, along with DOC and particulate filter catalysts, will be challenging. One method to reduce the total volume of catalysts in diesel exhaust systems is to combine the SCR and DPF catalysts by coating SCR catalyst technology on particulate filters. In this work, engine evaluation of SCR coated filters has been conducted to determine the viability of the technology. Steady-state engine evaluations demonstrated that high NOx conversions can be achieved for SCR coated filters after high temperature oven aging. The effect of soot loading on back pressure as well as the time for soot regeneration was investigated for SCR coated filters and compared to conventional oxidative catalyst coatings. Hydrocarbon, CO, and NOx emission performance during a filter regeneration condition has also been evaluated. The SCR coated filter technology has also been demonstrated on several filter materials.

SAE MOBILUS

Subscribers can view annotate, and download all of SAE's content. Learn More »

Access SAE MOBILUS »

Members save up to 16% off list price.
Login to see discount.
We also recommend:
TECHNICAL PAPER

Opportunities and Challenges for Blended 2-Way SCR/DPF Aftertreatment Technologies

2009-01-0274

View Details

TECHNICAL PAPER

Impact of Aging and NOX/Soot Ratio on the Performance of a Catalyzed Particulate Filter for Heavy Duty Diesel Applications

2005-01-0663

View Details

TECHNICAL PAPER

Developments In Diesel Emission Aftertreatment Technology

2003-01-3753

View Details

X